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Gas Separation Membranes Derived from High-Performance Immiscible Polymer Blends Compatibilized with Small Molecules

机译:源自与小分子相容的高性能不混溶聚合物共混物的气体分离膜

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An immiscible polymer blend comprised of high-performance copolyimide 6FDA-DAM:DABA(3:2) (6FDD) and polybenzimidazole (PBI) was compatibilized using 2-methylimidazole (2-MI), a commercially available small molecule. Membranes were fabricated from blends of 6FDD:PBI (50:50) with and without 2-MI for H-2/CO2 separations. The membranes demonstrated a matrix-droplet type microstructure as evident with scanning electron microscopy (SEM) imaging where 6FDD is the dispersed phase and PBI is the continuous phase. In addition, membranes with 2-MI demonstrated a uniform microstructure as observed by smaller and more uniformly dispersed 6FDD domains in contrast to 6FDD:PBI (50:50) blend membranes without 2-MI. This compatibilization effect of 2-MI was attributed to interfacial localization of 2-MI that lowers the interfacial energy similar to a surfactant. Upon the incorporation of 2-MI, the H-2/CO2 selectivity improved remarkably, compared to the pure blend, and surpassed the Robeson's upper bound. To our knowledge, this is the first report of the use of a small molecule to compatibilize a high-performance immiscible polymer blend. This approach could afford a novel class of membranes in which immiscible polymer blends can be compatibilized in an economical and convenient fashion.
机译:使用2-甲基咪唑(2-MI)(一种可商购的小分子)使由高性能共聚酰亚胺6FDA-DAM:DABA(3:2)(6FDD)和聚苯并咪唑(PBI)组成的不混溶的聚合物混合物增容。膜是由具有和不具有2-MI的6FDD:PBI(50:50)的混合物制成的,用于H-2 / CO2分离。膜表现出基质-液滴类型的微结构,如通过扫描电子显微镜(SEM)成像所证明的那样,其中6FDD是分散相,PBI是连续相。此外,与没有2-MI的6FDD:PBI(50:50)共混膜相比,具有2-MI的膜表现出较小且更均匀分散的6FDD域观察到的均匀微观结构。 2-MI的这种增容作用归因于2-MI的界面局部化,这降低了类似于表面活性剂的界面能。掺入2-MI后,与纯共混物相比,H-2 / CO2的选择性显着提高,并超过了Robeson的上限。据我们所知,这是使用小分子使高性能不混溶聚合物共混物相容的第一份报告。这种方法可以提供一类新型的膜,其中可以以经济和方便的方式使不混溶的聚合物共混物相容。

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